K
Kamil Kaygusuz
Researcher at Karadeniz Technical University
Publications - 180
Citations - 8850
Kamil Kaygusuz is an academic researcher from Karadeniz Technical University. The author has contributed to research in topics: Renewable energy & Energy policy. The author has an hindex of 49, co-authored 177 publications receiving 7887 citations.
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Energy for sustainable development: A case of developing countries
TL;DR: In this paper, the authors discussed the energy situation of the developing countries for sustainable development, and proposed a new financial, institutional and technological framework, as well as capacity building in order to dramatically scale up access to modern energy services at the local and regional levels.
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Energy services and energy poverty for sustainable rural development
TL;DR: In many rural areas, poor people still depend on wood and other biomass fuels for most of their household and income-generating activities, which is a factor in women's disproportionate lack of access to education and income, and inability to escape from poverty.
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Thermal conductivity improvement of stearic acid using expanded graphite and carbon fiber for energy storage applications
TL;DR: In this article, the influence of expanded graphite (EG) and carbon fiber (CF) as heat diffusion promoters on thermal conductivity improvement of stearic acid (SA), as a phase change material (PCM), was evaluated.
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Hydrokinetic energy conversion systems: A technology status review
TL;DR: In this paper, the authors have investigated these kinds of hydrokinetic energy technologies, and given some detailed information about current base of Hydrokinetic, and tried to give some knowledge in order to familiarize with the hydro-kinetic turbine and generator, the selection information of a suitable turbine has been mentioned.
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Experimental study on melting/solidification characteristics of a paraffin as PCM
TL;DR: In this article, the melting and solidification processes of paraffin as a phase change material (PCM) in a tube in shell heat exchanger system were investigated. But the authors focused on the possibility of the heat transfer enhancement in the heat storage geometry, which is achieved by tilting the outer surface of the storage container.